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ADP1052ACPZ-R7 Folha de dados(PDF) 105 Page - Analog Devices |
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ADP1052ACPZ-R7 Folha de dados(HTML) 105 Page - Analog Devices |
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105 / 113 page ![]() Data Sheet ADP1052 Rev. B | Page 105 of 113 Table 183. Register 0xFE63—Modulation Reference MSBs Setting for Open-Loop Input Voltage Feedforward Operation Bits Bit Name/Function R/W Description [7:0] Modulation reference setting MSBs R/W This register sets the eight MSBs of the modulation reference in open-loop feedforward operation mode. The step size of an LSB depends on the switching frequency. Switching Frequency Range (kHz) LSB Step Size (ns) 49 to 87 80 97.5 to 184 40 195.5 to 379 20 390.5 to 625 10 Table 184. Register 0xFE64—Modulation Reference LSBs Setting for Open-Loop Input Voltage Feedforward Operation Bits Bit Name/Function R/W Description [7:0] Modulation reference setting LSBs R/W This register sets the eight LSBs of the modulation reference in open-loop feedforward operation mode. The step size of an LSB depends on the switching frequency. Switching Frequency Range (kHz) LSB Step Size (ps) 49 to 87 312.5 97.5 to 184 156.25 195.5 to 379 78.125 390.5 to 625 39.0625 Table 185. Register 0xFE65—Peak Value and Average Value Update Rate Settings Bits Bit Name/ Function R/W Description [7:6] Reserved R/W Reserved. [5:3] Peak value update rate R/W These bits specify the update rate for the peak value of the output voltage (MFR_VOUT_MAX/_MIN), output current (MFR_IOUT_MAX), output power (MFR_POUT_MAX), and temperature (MFR_TEMPERATURE_MAX). Bit 2 Bit 1 Bit 0 Update Rate 0 0 0 2.6 ms 0 0 1 1.3 ms 0 1 0 655 µs 0 1 1 327 µs 1 0 0 163 µs 1 0 1 82 µs [2:0] Average value update rate R/W These bits specify the update rate for the average input current (READ_IIN), output current (READ_IOUT), output power (READ_POUT), and temperature (READ_TEMPERATURE_1). Bit 2 Bit 1 Bit 0 Update Rate (ms) 0 0 0 10 0 0 1 63 0 1 0 126 0 1 1 252 1 0 0 504 Table 186. Register 0xFE66—Adaptive Dead Time Compensation Configuration Bits Bit Name/Function R/W Description [7:6] Averaging period R/W These bits specify the averaging period for the CS1 current used to set the adaptive dead time. It is recommended that the averaging time be set to a value much greater than any transient condition. Bit 7 Bit 6 Averaging Period (ms) 0 0 2.5 0 1 1.2 1 0 0.6 1 1 0.3 [5:3] Update rate R/W The adaptive dead time compensation algorithm adjusts dead time in steps of 5 ns. These bits program the number of PWM switching cycles between each step. The number is calculated as 2N + 1, where N is the 3-bit value specified by these bits. For example, if N = 6 (110 binary), each PWM edge is adjusted by 5 ns every 26 + 1 = 65 switching cycles. |
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